The use of Reconfigurable Intelligent Surfaces (RIS) technology to extend coverage and allow for better control of the wireless environment has been proposed in several use cases, including Ultra-Reliable Low-Latency Communications (URLLC), communications. However, the extremely challenging latency constraint makes explicit channel estimation difficult, so positioning information is often used to configure the RIS and illuminate the receiver device. In this work, we analyze the effect of imperfections in the positioning information on the reliability, deriving an upper bound to the outage probability. We then use this bound to perform power control, efficiently finding the minimum power that respects the URLLC constraints under positioning uncertainty. The optimization is conservative, so that all points respect the URLLC constraints, and the bound is relatively tight, with an optimality gap between 1.5 and 4.5~dB.
翻译:在包括超可靠低寿命通信(URLLC)和通信在内的若干使用案例中,建议使用可重新配置的智能表面(RIS)技术来扩大覆盖面,更好地控制无线环境。然而,极具挑战性的潜伏限制使得对频道进行明确估计十分困难,因此定位信息常常被用来配置RIS和亮亮接收器装置。在这项工作中,我们分析了定位信息不完善对可靠性的影响,并得出了断流概率的上限。然后,我们利用这一约束来进行电源控制,有效地找到尊重定位不确定情况下的URLC限制的最低功率。优化是保守的,因此所有点都尊重URLC的限制,约束度相对较紧,在1.5到4.5 dB之间,最佳性差距在1.5到4.5 dB之间。